2010
DOI: 10.1038/embor.2010.28
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Structural basis of wedging the Golgi membrane by FAPP pleckstrin homology domains

Abstract: Structural basis of wedging the Golgi membrane by FAPP pleckstrin homology domainsOverduin and colleagues present the NMR structures of free, micelle and PtdIns(4)P-bound FAPP1-PH domain. The micelle-bound structure reveals how its prominent wedge independently tubulates Golgi membranes by leaflet penetration. A hydrophobic element inserts into and bends membranes, and is conserved in pleckstrin homology domains of CERT and OSBP proteins.

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Cited by 71 publications
(89 citation statements)
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“…The ␤1/␤2 loop of the PH domain reportedly penetrates into the membrane (36). The binding mode of the FAPP1 PH domain is consistent with our binding model, as the ␤1/␤2 loop of the CERT PH domain should be buried in the membrane (Fig.…”
supporting
confidence: 71%
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“…The ␤1/␤2 loop of the PH domain reportedly penetrates into the membrane (36). The binding mode of the FAPP1 PH domain is consistent with our binding model, as the ␤1/␤2 loop of the CERT PH domain should be buried in the membrane (Fig.…”
supporting
confidence: 71%
“…All of the COFs family proteins specifically recognize PtdIns(4)P and target the Golgi in a PtdIns(4)P-dependent manner (4, 27, 39, 40, 44 -46). In addition, the binding mode of all of the COFs family PH domains are similar to that of the CERT PH domain, as characterized the weak affinities to the headgroup of PtdIns(4)P (the K D values are millimolar range or even undetected) and significant affinities to the PtdIns(4)P-embedded Golgi-mimetic liposomes (the K D values are 0.3ϳ3 M) (27,36,45). Furthermore, all of the COFs family proteins are known to mainly function in the lipid transport to the organelle, and thus the characteristic binding mode might be suitable to perform this role.…”
mentioning
confidence: 96%
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